Provided is a portable terminal with a variable ground unit. The portable terminal includes a main board including a ground layer having a predetermined area; at least one antenna radiator placed at the main board; at least one conductor installed or formed in the terminal and spaced apart from the ground layer; at least one switching unit interposed between the at least one conductor and the ground layer, the switching unit selectively connecting the conductor to the ground layer through an electrical connection unit; and a controller controlling the switching unit so that the conductor and the ground layer of the main board are selectively electrically connected depending on a state of the terminal.
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1. A portable terminal with a variable ground unit, comprising:
a main body receiving a main board including a ground layer having a predetermined area;
at least one antenna radiator placed at the main board;
a sub-body movably coupled to the main body by an electrically conductive hinge module and including at least one conductor electrically connected to the ground layer by the electrically conductive hinge module;
at least one switching unit interposed between the at least one conductor and the ground layer, the at least one switching unit selectively connecting the at least one conductor to the ground layer by an electrical connection unit; and
a controller controlling the at least one switching unit so that the at least one conductor and the ground layer of the main board are selectively electrically connected depending on a state of the terminal.
2. The portable terminal of
wherein the sub-body performs a predetermined opening and closing operation with respect to the main body.
3. The portable terminal of
wherein the controller controls the switching unit depending on whether the sub-body is opened or closed.
4. The portable terminal of
5. The portable terminal of
6. The portable terminal of
7. The portable terminal of
8. The portable terminal of
9. The portable terminal of
10. The portable terminal of
11. The portable terminal of
12. The portable terminal of
13. The portable terminal of
14. The portable terminal of
15. The portable terminal of
16. The portable terminal of
17. The portable terminal of
18. The portable terminal of
19. The portable terminal of
20. The portable terminal of
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This application claims priority under 35 U.S.C. § 119 to an application filed in the Korean Intellectual Property Office on Dec. 13, 2006 and assigned Serial No. 2006-126844, the contents of which are incorporated herein by reference.
1. Field of the Invention
The present invention relates generally to a portable terminal with a ground unit, and in particular, to a portable terminal with a variable ground unit configured to reduce a Specific Absorption Rate (SAR) by achieving an optimum ground area corresponding to an open/closed state of the terminal and a mode change thereof, and to contribute to improving radiation performance of an antenna.
2. Description of the Related Art
As the electronic communications industry is developed, a portable terminal is becoming smaller and slimmer while providing more various functions. For example, a portable terminal is provided with a speaker unit that can implement various melodies and chords, and a color display unit having millions of pixels. Besides a basic communications function, the terminal may provide an MP3 player function, game contents using the display unit, and a Digital Multimedia Broadcast (DMB) function for providing a public broadcasting service.
Various types of terminals are being continuously released to meet users' demands. In general, the terminals may be classified according to how the terminal is opened or closed for a calling function of the terminal. Thus, the terminal may be classified into a basic bar type, a flip type, a folder type, a slide type, a pop-up type, a slide and rotation type.
Each of the aforementioned terminals includes a predetermined ground unit. The ground unit is formed at a main board in general, and may serve as a conductor for electronic function groups installed on the main board, or as a conductor for a smooth operation of an antenna radiator for wireless communications. Also, the ground unit may be extended to shield an electronic wave potentially harmful to the human body.
Since the terminals are used as portable wireless devices, a predetermined antenna is provided to each of the terminals. Various types of antennas are being used for the terminals. Examples of the antennas may include an external antenna unit protruding outside the terminal, and a built-in antenna so-called ‘intenna’ mounted inside the terminal. The antenna must be disposed at a proper place of the terminal to maximize its performance, depending on the type of opening and closing a sub-body of the terminal. For example, in the folder type terminal and the slide type terminal, a terminal performs its antenna function by an external antenna protruding upwardly from a main body, or by an internal antenna radiator at a predetermined rear surface inside the main body.
However, since the terminals are designed in a stand-off type such that the optimum antenna coupling is performed when the sub-body is opened or closed, or an intermediate radiation characteristic is obtained, thereby resulting in degradation in overall radiation characteristic of the terminal. Also, the radiation characteristic may degrade because of a finger touch occurring when a user grabs the terminal for calling.
Therefore, the terminals include a separate ground unit. For example, in the case of the folder type terminal or the slide type terminal including a hinge module or a slide hinge module that mechanically connects a main body with a folder or a slide body, the hinge module is electrically connected to a ground layer of a main board installed in the main body, thereby expanding a ground layer. This serves to shield an electronic wave, thereby minimizing bad influence of the terminal on the human body.
When the folder or the slide body is opened for a calling operation, the above-mentioned structure, in which a ground layer of the main board of the main body is grounded uniformly with a ground layer of the hinge module or of the hinge module and the sub-body, reduces influence on the human body and improves radiation efficiency of the antenna. However, the radiation efficiency of the antenna degrades on the free space because of the expansion of the ground area.
Also, the terminal includes one or more antennas having integral or individual functions operating within different frequency bands in response to the current tendency of making a terminal cover various bands of, for example, Code Division Multiple Access (CDMA), a Digital Cellular System (DCS), a Personal Communications System (PCS), Digital Multimedia Broadcasting (DMB), and Bluetooth®. The antennas of different bands are different in ground area for the optimum operation.
Therefore, a portable terminal requires a variable ground unit that can perform optimum antenna coupling depending on an opened/closed state of the sub-body, or a corresponding band among multiple bands.
An aspect of the present invention is to substantially solve at least the above problems and/or disadvantages and to provide at least the advantages below. Accordingly, an aspect of the present invention is to provide a portable terminal with a variable ground unit configured to achieve an optimum antenna radiation characteristic depending on whether a sub-body is opened or closed.
Another aspect of the present invention is to provide a portable terminal with a variable ground unit configured to achieve an optimum antenna radiation characteristic by varying a ground area depending on an applied frequency band.
Still another aspect of the present invention is to provide a portable terminal with a variable ground unit configured to reduce an SAR, which affects the human body, to the maximum intent depending on whether a sub-body is opened or closed.
Further another aspect of the present invention is to provide a portable terminal with a variable ground unit configured to implement a high-end terminal by maintaining optimum terminal performance when the terminal is opened or closed and operates at a corresponding frequency band.
According to one aspect of the present invention, a portable terminal with a variable ground unit includes a main board including a ground layer having a predetermined area; at least one antenna radiator placed at the main board; at least one conductor installed or formed in the terminal and spaced apart from the ground layer; at least one switching unit interposed between the at least one conductor and the ground layer, the switching unit selectively connecting the conductor to the ground layer through an electrical connection unit; and a controller controlling the switching unit so that the conductor and the ground layer of the main board are selectively electrically connected together depending on a state of the terminal.
The above and other objects, features and advantages of the present invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings in which:
Preferred embodiments of the present invention will be described herein below with reference to the accompanying drawings. In the following description, well-known functions or constructions are not described in detail since they would obscure the invention in unnecessary detail.
A folder type terminal is described and illustrated in describing the present invention. However, the present invention is not limited thereto, but may be applied not only to a slide type terminal, a pop-up type terminal and a swing type terminal each including a sub-body being opened and closed in various manners but also to a bar type terminal
The folder 120 may include a display unit 121 of a predetermined size. The display unit 121 may be a Liquid Crystal Display (LCD) module. A speaker unit 122 is installed above the display unit 121.
The folder 120 is folded with the main body 110, pivoting on a portion where the folder 120 is coupled with the main body 110. The folder 120 includes a center hinge arm 123, and side hinge arms 114 and 115 respectively installed at both sides of the main body 110 and facing each other. The center hinge arm 123 receives therein a hinge module (30 of
A folder printed circuit board (hereinafter, referred to as a slave board) 20 is installed in the folder 120, and a second ground layer (22 of
The hinge module 30 serves not only as a medium that electrically connects the ground layer 12 of the main board 10 with the second ground layer 22 of the slave board 20 but also as a conductor to implement an expanded ground structure. Therefore, electrical connection units 31 and 32 may be respectively installed between the ground layer 12 of the main board 10 and the hinge module 30 and between the second ground layer 22 of the slave board 20 and the hinge module 30. For example, examples of the electronic connection units 31 and 32 may include a conductive metal pin, a conductive gasket, a Flexible Printed Circuit (FPC), and other well-known electrical connectors.
Although not shown, at least one component of the hinge module 30 may be formed of a conductor. As illustrated, a hinge housing constituting an exterior of the hinge module 30 is formed of a metallic material for an electrical connection in the present invention. However, the present invention is not limited thereto, and a hinge shaft, a hinge cam, and a hinge spring among well-known components of the hinge module 30 may be formed of a metallic material so that the entire hinge module 30 can be used as a ground layer. It is important to use the hinge module 30 as a medium by electrically connecting the electrical connection units 31 and 32 to the same component of the hinge module.
The terminal includes a sensor that detects whether the folder is opened or closed. A Hall sensor (e.g., Hall IC) 17 is used as the sensor. The Hall sensor 17 is mounted on a portion of the main board 10 in the form of a Surface Mounted device (SMD), and a magnet 25 having a magnetic force is installed at a portion of the folder 120 corresponding to the portion of the main board 10 where the Hall sensor 17 is installed. When the folder 120 is closed, the Hall sensor 17 detects the magnet 25, thereby detecting whether the folder 120 is opened or closed.
A predetermined switching unit 13 may be installed at a portion of the main board 10 where the ground layer 12 is not formed. One end of the switching unit 13 is electrically connected to a pattern 16 electrically connected to the ground layer 12, and the other end of the switching unit 13 is electrically connected to a conductive pad 14 by a predetermined pattern 15. The electrical connection unit 31 connected to the hinge module 30 is connected to the conductive pad 14. Consequently, the switching unit 13 is interposed in series between the electrical connection unit 31 connected to the hinge module 30 and the ground layer 12.
Likewise, a conductive pad 24 is formed at the slave board 20. The conductive pad 24 is electrically connected to the hinge module 30 by the electrical connection unit 32, and is electrically connected to the second ground layer 22 by a predetermined pattern 23.
If an internal space of the terminal is available, the switching unit 13 of the main board 10 may be implemented on a separate small printed circuit board. Well-known switching units such as a zener diode, an RF switch may be employed as the switching unit 13.
A terminal controller controls the switching unit 13 upon receiving a detection signal of the Hall sensor 17 detecting opening or closing of the folder 120. That is, the terminal controller detects the opening or closing of the folder 120 through the Hall sensor 17. Then, the terminal controller can vary a ground area by selectively electrically connecting the hinge module 30, the second ground layer 22 of the slave board 20, and the ground layer 12 of the main board 10 using the switching unit 13. Here, the grounding with the hinge module 30 may be set when a terminal provider initially couples antenna radiation characteristics of the terminal. When the folder 120 is closed, the grounding with the hinge module 30 may be disconnected using the switching unit 13, but may be performed when the folder 120 is opened in order to reduce SAR.
The terminal 100 illustrated in
Thus, the control of the switching unit for varying a ground area of the ground unit having a configuration illustrated in
A controller 500 controls an overall operation of the terminal, and controls a switching unit 506 that selectively connects one separate conductor 116 installed according to the present invention to a ground layer of the main board 10. Also, the controller 50 may control another switching unit 507 that switches the antennas 40 and 50 to selectively operate in different bands depending on a mode setting of a user.
In the present invention, the ground layer 12 of the main board 10, the second ground layer 22 of the slave board 20, and the first conductor 117 are electrically connected to each other all the time, and only the second conductor 116 is selectively connected to the ground layer 12 of the ground board 10 by the predetermined switching unit 506. However, the present invention is not limited thereto, and a plurality of ground bodies may be selectively connected by a plurality of switching units, respectively when the terminal is used in multiple bands. That is, according to the present invention, a ground area may vary depending on a corresponding function of a terminal.
As the first and second ground bodies 116 and 117, various well-known conductors may be used selectively or together, such as an electromagnetic interference (EMI) spray coated on an inner surface of the case frame of the terminal, a planar metallic plate attached on the inner surface of the case frame, and a Flexible Printed Circuit (FPC) attached on the inner surface of the case frame.
The detailed description of a memory 501, a key input unit 502, a display unit 503, a radio communication unit 505, and a codec 504 will be omitted because those components are well-known components of the terminal.
As illustrated in
Thus, for example, if the terminal operates in a relatively long-wavelength band of, for example, TDMA and DVB-H, a wide and long ground area is advantageous. Therefore, the controller 500 controls the switching unit 506 so that the second conductor 116 is electrically connected to the ground layer 12 of the main board 10. In contrast, if the terminal operates in a relatively short-wavelength band of, for example, PCS and CDMA, the switching unit 506 controls the switching unit 506 to open the second conductor 116 and the ground layer 12 of the main board 10, thereby reducing the ground area and thus achieving optimization.
As illustrated in
In
According to the present invention, a desired ground area depending on an operational state (e.g., open/closed state, mode change, band change) of the terminal is obtained. Accordingly, an optimum antenna radiation characteristic can be achieved all the time, which contributes to implementing a high-end terminal.
While the invention has been shown and described with reference to certain preferred embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the invention as defined by the appended claims.
Park, Jong-Kui, Kang, Dae-Chul, Jeon, Hyu-Myung, Youn, Yue-Il, Seo, Seung-Han
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Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Sep 28 2007 | PARK, JONG-KUI | SAMSUNG ELECTRONICS CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 020263 | /0489 | |
Sep 28 2007 | KANG, DAE-CHUL | SAMSUNG ELECTRONICS CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 020263 | /0489 | |
Sep 28 2007 | JEON, HYU-MYUNG | SAMSUNG ELECTRONICS CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 020263 | /0489 | |
Sep 28 2007 | YOUN, YUE-IL | SAMSUNG ELECTRONICS CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 020263 | /0489 | |
Sep 28 2007 | SEO, SEUNG-HAN | SAMSUNG ELECTRONICS CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 020263 | /0489 | |
Dec 13 2007 | Samsung Electronics Co., Ltd | (assignment on the face of the patent) | / |
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